Metabolism of niclosamide in sediment and water systems

被引:19
作者
Graebing, PW
Chib, JS [1 ]
Hubert, TD
Gingerich, WH
机构
[1] Pittsburgh Environm Res Lab Inc, Pittsburgh, PA 15238 USA
[2] US Geol Survey, Upper Midwest Environm Sci Ctr, La Crosse, WI 54603 USA
关键词
niclosamide; lampricide; half-life; aerobic soil metabolism; anaerobic soil metabolism;
D O I
10.1021/jf0401524
中图分类号
S [农业科学];
学科分类号
09 ;
摘要
A series of experiments analyzed the kinetics and mechanisms of [C-14]niclosamide degradation. The aerobic aquatic metabolism of [C-14]niclosamide was studied in nonsterile river water/sediment mixtures. Test systems, maintained under aerobic conditions, were treated with niclosamide and incubated in the dark at 25.0 +/- 1.0 degreesC for 30 days. Half-lives of 4.9 and 5.4 days were calculated for the chlorosalicylic acid- and chloronitroaniline-labeled test systems, respectively. From 0 to 21 days after treatment (DAT), the only metabolism product observed in either test system was aminoniclosamide. At the final sampling interval, five peaks were resolved from the chlorosalicylic acid label, and three peaks were resolved from the chloronitroaniline label test substance. By 30 DAT, sediment-bound residues represented similar to70% of the observed radioactivity. For the anaerobic aquatic metabolism of [C-14]niclosamide, test systems were incubated under anaerobic conditions for 365 days. Half-lives of 0.65 day for the chlorosalicylic acid label and 2.79 days for the chloronitroaniline label were calculated. From 0 to 3 DAT, niclosamide was first transformed into aminoniclosamide. Aminoniclosamide is readily formed, as it was observed in the chlorosalicylic acid label 0 DAT sampling. Several minor metabolites were observed in the water and sediment extracts. None of these metabolites were formed to a significant amount until the parent niclosamide dissipated below the detection limit. Two of the byproducts from these metabolism studies are polar unknowns eluting at 3 and 5 min by HPLC, similar to the unknowns observed in aqueous photolysis studies.
引用
收藏
页码:5924 / 5932
页数:9
相关论文
共 15 条
[1]  
Andrews P, 1983, INT ENCY PHARM THERA, P61
[2]  
Applegate V. C., 1961, 1 GREAT LAK FISH COM, P1
[3]  
BRUAUX P, 1961, B WORLD HEALTH ORGAN, V25, P519
[4]   Rapid loss of lampricide from catfish and rainbow trout following routine treatment [J].
Dawson, VK ;
Schreier, TM ;
Boogaard, MA ;
Spanjers, NJ ;
Gingerich, WH .
JOURNAL OF AGRICULTURAL AND FOOD CHEMISTRY, 2002, 50 (23) :6780-6785
[5]   PERSISTENCE OF SOME PHENYLAMIDE PESTICIDES IN AQUATIC ENVIRONMENT .1. HYDROLYSIS [J].
ELDIB, MA ;
ALY, OA .
WATER RESEARCH, 1976, 10 (12) :1047-1050
[6]  
FETTEROLF C, 2002, SEA LAMPREY GREAT LA
[7]  
GILLET J, 1961, B WORLD HEALTH ORGAN, V25, P509
[8]  
Gonnert R, 1961, CIBA FDN S BILH, P326
[9]   Aqueous photolysis of niclosamide [J].
Graebing, PW ;
Chib, JS ;
Hubert, TD ;
Gingerich, WH .
JOURNAL OF AGRICULTURAL AND FOOD CHEMISTRY, 2004, 52 (04) :870-878
[10]   DEGRADATION OF NICLOSAMIDE (2',5-DICHLORO-4'-NITROSALICYLANILIDE) IN SEDIMENT AND WATER-SYSTEMS [J].
MUIR, DCG ;
YARECHEWSKI, AL .
JOURNAL OF AGRICULTURAL AND FOOD CHEMISTRY, 1982, 30 (06) :1028-1032